Humplík Jan F, Bergougnoux Véronique, Jandová Michaela, Šimura Jan, Pěnčík Aleš, Tomanec Ondřej, Rolčík Jakub, Novák Ondřej, Fellner Martin
Laboratory of Growth Regulators & Department of Chemical Biology and Genetics, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University & Institute of Experimental Botany ASCR, Olomouc, Czech Republic.
Department of Molecular Biology, Centre of the Region Haná for Biotechnological and Agricultural Research, Faculty of Science, Palacký University, Olomouc, Czech Republic.
PLoS One. 2015 Feb 19;10(2):e0117793. doi: 10.1371/journal.pone.0117793. eCollection 2015.
Dark-induced growth (skotomorphogenesis) is primarily characterized by rapid elongation of the hypocotyl. We have studied the role of abscisic acid (ABA) during the development of young tomato (Solanum lycopersicum L.) seedlings. We observed that ABA deficiency caused a reduction in hypocotyl growth at the level of cell elongation and that the growth in ABA-deficient plants could be improved by treatment with exogenous ABA, through which the plants show a concentration dependent response. In addition, ABA accumulated in dark-grown tomato seedlings that grew rapidly, whereas seedlings grown under blue light exhibited low growth rates and accumulated less ABA. We demonstrated that ABA promotes DNA endoreduplication by enhancing the expression of the genes encoding inhibitors of cyclin-dependent kinases SlKRP1 and SlKRP3 and by reducing cytokinin levels. These data were supported by the expression analysis of the genes which encode enzymes involved in ABA and CK metabolism. Our results show that ABA is essential for the process of hypocotyl elongation and that appropriate control of the endogenous level of ABA is required in order to drive the growth of etiolated seedlings.
暗诱导生长(黄化形态建成)主要特征是下胚轴快速伸长。我们研究了脱落酸(ABA)在番茄(Solanum lycopersicum L.)幼苗发育过程中的作用。我们观察到,ABA缺乏导致下胚轴在细胞伸长水平上生长减缓,且外源ABA处理可改善ABA缺陷型植株的生长,植株对此呈现浓度依赖性反应。此外,快速生长的暗培养番茄幼苗中ABA积累,而蓝光下生长的幼苗生长速率低且ABA积累较少。我们证明,ABA通过增强编码细胞周期蛋白依赖性激酶抑制剂SlKRP1和SlKRP3的基因表达以及降低细胞分裂素水平来促进DNA内复制。这些数据得到了编码参与ABA和CK代谢的酶的基因表达分析的支持。我们的结果表明,ABA对于下胚轴伸长过程至关重要,并且需要适当控制ABA的内源水平以驱动黄化幼苗的生长。